A Novel Augmented Railgun Using Permanent Magnets

A novel augmented railgun using a permanent magnet is proposed in this paper. The effects of the permanent magnet on the magnetic field and distribution of current density have been investigated. High current densities in the railguns can lead to high local temperature and erosion of the rails. Ther...

Full description

Bibliographic Details
Main Authors: M. B. Heydari, M. Asgari, L. Gharib, A. Keshtkar, N. Jafari, M. Zolfaghari
Format: Article
Language:English
Published: Advanced Electromagnetics 2019-06-01
Series:Advanced Electromagnetics
Subjects:
Online Access:https://aemjournal.org/index.php/AEM/article/view/961
id doaj-9e2e7f6951fa48449e93542e3df865c9
record_format Article
spelling doaj-9e2e7f6951fa48449e93542e3df865c92020-11-25T00:57:29ZengAdvanced ElectromagneticsAdvanced Electromagnetics2119-02752019-06-01819910510.7716/aem.v8i1.961961A Novel Augmented Railgun Using Permanent MagnetsM. B. Heydari0M. Asgari1L. Gharib2A. Keshtkar3N. Jafari4M. Zolfaghari5Iran University of Science and Technology (IUST)Imam Khomeini International University (IKIU)Imam Khomeini International University (IKIU)Imam Khomeini International University (IKIU)Tabriz University of Medical SciencesTarbiat Modares University (TMU)A novel augmented railgun using a permanent magnet is proposed in this paper. The effects of the permanent magnet on the magnetic field and distribution of current density have been investigated. High current densities in the railguns can lead to high local temperature and erosion of the rails. Therefore, the current densities in the rails and armature should be decreased without the reduction of the Lorentz force which is required for acceleration. For this purpose, augmentation of the magnetic field can be used as an effective method. The Finite Element Method (FEM) simulations have been applied in this article to analyze the performance of the railgun in the presence of the magnets. Two augmented railgun structures have been introduced to produce a constant external magnetic field. For both structures, augmented railgun characteristics are studied in comparison to the railgun without the augmentation. The results show that augmentation with permanent magnet increases railgun efficiency, especially in low current railguns. For pulse current source I=30kA, Lorentz force of the augmented railgun with four magnets is 2.02 times greater than the conventional railgun.https://aemjournal.org/index.php/AEM/article/view/961Augmented Railgun; Permanent magnet; Lorentz force; Magnetic field
collection DOAJ
language English
format Article
sources DOAJ
author M. B. Heydari
M. Asgari
L. Gharib
A. Keshtkar
N. Jafari
M. Zolfaghari
spellingShingle M. B. Heydari
M. Asgari
L. Gharib
A. Keshtkar
N. Jafari
M. Zolfaghari
A Novel Augmented Railgun Using Permanent Magnets
Advanced Electromagnetics
Augmented Railgun; Permanent magnet; Lorentz force; Magnetic field
author_facet M. B. Heydari
M. Asgari
L. Gharib
A. Keshtkar
N. Jafari
M. Zolfaghari
author_sort M. B. Heydari
title A Novel Augmented Railgun Using Permanent Magnets
title_short A Novel Augmented Railgun Using Permanent Magnets
title_full A Novel Augmented Railgun Using Permanent Magnets
title_fullStr A Novel Augmented Railgun Using Permanent Magnets
title_full_unstemmed A Novel Augmented Railgun Using Permanent Magnets
title_sort novel augmented railgun using permanent magnets
publisher Advanced Electromagnetics
series Advanced Electromagnetics
issn 2119-0275
publishDate 2019-06-01
description A novel augmented railgun using a permanent magnet is proposed in this paper. The effects of the permanent magnet on the magnetic field and distribution of current density have been investigated. High current densities in the railguns can lead to high local temperature and erosion of the rails. Therefore, the current densities in the rails and armature should be decreased without the reduction of the Lorentz force which is required for acceleration. For this purpose, augmentation of the magnetic field can be used as an effective method. The Finite Element Method (FEM) simulations have been applied in this article to analyze the performance of the railgun in the presence of the magnets. Two augmented railgun structures have been introduced to produce a constant external magnetic field. For both structures, augmented railgun characteristics are studied in comparison to the railgun without the augmentation. The results show that augmentation with permanent magnet increases railgun efficiency, especially in low current railguns. For pulse current source I=30kA, Lorentz force of the augmented railgun with four magnets is 2.02 times greater than the conventional railgun.
topic Augmented Railgun; Permanent magnet; Lorentz force; Magnetic field
url https://aemjournal.org/index.php/AEM/article/view/961
work_keys_str_mv AT mbheydari anovelaugmentedrailgunusingpermanentmagnets
AT masgari anovelaugmentedrailgunusingpermanentmagnets
AT lgharib anovelaugmentedrailgunusingpermanentmagnets
AT akeshtkar anovelaugmentedrailgunusingpermanentmagnets
AT njafari anovelaugmentedrailgunusingpermanentmagnets
AT mzolfaghari anovelaugmentedrailgunusingpermanentmagnets
AT mbheydari novelaugmentedrailgunusingpermanentmagnets
AT masgari novelaugmentedrailgunusingpermanentmagnets
AT lgharib novelaugmentedrailgunusingpermanentmagnets
AT akeshtkar novelaugmentedrailgunusingpermanentmagnets
AT njafari novelaugmentedrailgunusingpermanentmagnets
AT mzolfaghari novelaugmentedrailgunusingpermanentmagnets
_version_ 1725223926496231424